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首页> 外文期刊>American Journal of Physiology >Foxp3 promoter methylation impairs suppressive function of regulatory T cells in biliary atresia
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Foxp3 promoter methylation impairs suppressive function of regulatory T cells in biliary atresia

机译:Foxp3启动子甲基化损害胆道闭锁中调节性T细胞的抑制功能

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Biliary atresia (BA) is characterized by progressive inflammation of the biliary system leading to liver cirrhosis, necessitating liver transplantation in pediatric patients. Various cell types have been reported to participate in the proinflammatory response in rhesus rotaviras (RRV)-induced BA mouse models, including T helper (Th) 1, Th2, Th17, CD8~+ T cells, and natural killer cells. The immune suppressive regulatory T (Treg) cells, on the contrary, were reported not to function properly. The underlying mechanism is largely unknown. Focusing on the impaired suppressive function of Treg, we found methylation status of CpG islands within the Foxp3 promoter region of Treg cells in BA patients and murine models were both increased. Moreover, by injecting 5-aza-2'-deoxycytidine (Aza) as DNA-methylation inhibitor to RRV-infected mice, BA phenotypes were alleviated. Furthermore, Treg cells isolated from "RRV+Aza"-injected mice had better suppressive function than Treg cells from mice injected with RRV only, both in vivo and ex vivo. Thus we concluded that aberrant increased methylation status of "Foxp3 promoter" in Treg cells leads to impaired Treg suppressive function, exacerbating inflammatory injury in ВA.
机译:胆道休息(BA)的特征是胆道系统的逐步炎症,导致肝硬化,需要在儿科患者中进行肝移植。据报道,各种细胞类型参与恒河猴Rotaviras(RRV)诱导的BA小鼠模型中的促炎反应,包括T辅助(TH)1,TH2,TH17,CD8 + T细胞和天然杀伤细胞。相反,据报道,免疫抑制调节性T(Treg)细胞不正常运作。潜在机制在很大程度上是未知的。专注于Treg的抑制功能受损,我们发现在BA患者的Treg细胞的Foxp3启动子区域内CpG岛的甲基化状态均增加。此外,通过将5-AZA-2'-脱氧胞苷(AZA)作为DNA-甲基化抑制剂注射到RRV感染的小鼠,缓解了BA表型。此外,从“rRV + AZA” - 反射小鼠中分离的Treg细胞具有比仅在体内和离体中注射RRV的小鼠的Treg细胞具有更好的抑制功能。因此,我们得出结论,在Treg细胞中的“Foxp3启动子”的异常增加了“Foxp3启动子”的甲基化状态导致Treg抑制函数损害,在α中加剧炎症损伤。

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